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The Effect of Self-Heating on the Performance of a Tunable Filter With Embedded Windings in a Ferrite LTCC Package

机译:自加热对铁氧体LTCC封装中带有嵌入式绕组的可调滤波器性能的影响

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Traditionally, ferrite-based tunable filters are biased by large and bulky electromagnets, which require high currents to overcome the dissipated fields at the air interface between the electromagnet and the ferrite substrate. This problem has been solved by implementing the windings inside the package using ferrite low-temperature co-fired ceramic (LTCC). However, these embedded windings, which are densely packed, generate heat that affects the characteristics of the ferrite material. In this paper, we investigated the heat effects due to embedded windings in ferrite LTCC filters. We also incorporated the heating effects into an electromagnetic simulation model and achieved a good agreement between the simulations and the measurements. We found that increasing the temperature of the filter module from 0 °C to 190 °C by external heating causes the center frequency of the filter to shift by about 1 GHz. Alternatively, when a dc current is passed through the bias windings, heat is generated in the windings to a temperature of 250 °C measured at 260 mA of current. This heat causes the tunability of the filter to increase by more than 2%.
机译:传统上,基于铁氧体的可调谐滤波器受大型笨重的电磁铁的偏压,这需要大电流才能克服电磁铁和铁氧体基板之间空气界面处的耗散场。通过使用铁氧体低温共烧陶瓷(LTCC)在封装内部实现绕组可以解决此问题。但是,这些密集堆积的嵌入式绕组产生的热量会影响铁氧体材料的特性。在本文中,我们研究了由于铁氧体LTCC滤波器中嵌入绕组而产生的热效应。我们还将热效应纳入电磁仿真模型中,并在仿真和测量之间取得了良好的一致性。我们发现,外部加热会使滤波器模块的温度从0°C升高到190°C,导致滤波器的中心频率偏移大约1 GHz。另外,当直流电流通过偏置绕组时,绕组中会产生热量,温度达到260°C(在260 mA电流条件下)。这种热量使滤波器的可调性增加了2%以上。

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